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  1. The role of the amygdala in visual awareness.Lisa Feldman Barrett Seth Duncan - 2007 - Trends in Cognitive Sciences 11 (5):190.
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  • The representation of object concepts in the brain.Alex Martin - 2007
    Evidence from functional neuroimaging of the human brain indicates that information about salient properties of an object¿such as what it looks like, how it moves, and how it is used¿is stored in sensory and motor systems active when that information was acquired. As a result, object concepts belonging to different categories like animals and tools are represented in partially distinct, sensory- and motor property-based neural networks. This suggests that object concepts are not explicitly represented, but rather emerge from weighted activity (...)
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  • What you see is what you need.Jochen Triesch, Dana Ballard, Mary Hayhoe & Brian Sullivan - 2003 - Journal of Vision 3 (1):86-94.
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  • Neural correlates of change detection and change blindness.Diane Beck, Geraint Rees, Christopher D. Frith & Nilli Lavie - 2001 - Nature Neuroscience 4 (6):645-650.
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  • The Number Sense: How the Mind Creates Mathematics.Stanislas Dehaene - 1999 - British Journal of Educational Studies 47 (2):201-203.
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  • An Integrative Theory of Prefrontal Cortex Function.Earl K. Miller & Jonathan D. Cohen - 2001 - Annual Review of Neuroscience 24 (1):167-202.
    The prefrontal cortex has long been suspected to play an important role in cognitive control, in the ability to orchestrate thought and action in accordance with internal goals. Its neural basis, however, has remained a mystery. Here, we propose that cognitive control stems from the active maintenance of patterns of activity in the prefrontal cortex that represent goals and the means to achieve them. They provide bias signals to other brain structures whose net effect is to guide the flow of (...)
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  • Change blindness in the absence of a visual disruption.Daniel J. Simons, Steven Franconeri & Rebecca Reimer - 2000 - Perception 29 (10):1143-1154.
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  • The distributed human neural system for face perception.Elizabeth A. Hoffman, M. Ida Gobbini & James V. Haxby - 2000 - Trends in Cognitive Sciences 4 (6):223-233.
    Face perception, perhaps the most highly developed visual skill in humans, is mediated by a distributed neural system in humans that is comprised of multiple, bilateral regions. We propose a model for the organization of this system that emphasizes a distinction between the representation of invariant and changeable aspects of faces. The representation of invariant aspects of faces underlies the recognition of individuals, whereas the representation of changeable aspects of faces, such as eye gaze, expression, and lip movement, underlies the (...)
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  • The medial temporal lobe and the attributes of memory.John T. Wixted & Larry R. Squire - 2011 - Trends in Cognitive Sciences 15 (5):210-217.
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  • Conditional routing of information to the cortex: A model of the basal ganglia’s role in cognitive coordination.Andrea Stocco, Christian Lebiere & John R. Anderson - 2010 - Psychological Review 117 (2):541-574.
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  • Comparative mapping of higher visual areas in monkeys and humans.Guy A. Orban, David Van Essen & Wim Vanduffel - 2004 - Trends in Cognitive Sciences 8 (7):315-324.
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  • The neural basis of visual object learning.Hans P. Op de Beeck & Chris I. Baker - 2010 - Trends in Cognitive Sciences 14 (1):22-30.
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  • Comparative mapping of higher visual areas in monkeys and humans.G. A. Orban, D. Essen & W. Vanduffel - 2004 - Trends in Cognitive Sciences 8 (7):315-324.
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